Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4PiMinusStopLi.cc
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1//
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24// ********************************************************************
25//
26// File name: G4PiMinusStopLi
27//
28// Author: Maria Grazia Pia ([email protected])
29//
30// Creation date: 8 May 1998
31//
32// -------------------------------------------------------------------
33
34#include "G4ios.hh"
35
36#include "G4PiMinusStopLi.hh"
37
38#include <vector>
39
40#include "globals.hh"
41#include "Randomize.hh"
42#include "G4Proton.hh"
43#include "G4Neutron.hh"
44#include "G4ParticleTypes.hh"
47#include "G4LorentzVector.hh"
50
51// np/pp production ratio
52// Experimental values:
53// R(np/pp) = 6.3 +- 1.4 (P.Heusi et al., Nucl. Phys. A407 (1983) 429
54G4double G4PiMinusStopLi::npRatio = 6.3;
55
56// Average numbers of final nucleons detected, for N-pair absorption
57// (P.Heusi et al., Nucl. Phys. A407 (1983) 429
58G4double G4PiMinusStopLi::nFinalNucleons = 1.9;
59
60// Kinetic energy (MeV) distributions measured for coincident nucleon
61// emission
62// P. Heusi et al., Nucl. Phys. A407(1983) 429
63
64G4int G4PiMinusStopLi::eKinEntries = 21;
65
66G4double G4PiMinusStopLi::eKinData[21] = { 0.0018, 0.0025, 0.003, 0.045,
67 0.007, 0.014, 0.023,
68 0.4, 0.09, 0.18,
69 0.25, 0.3, 0.25, 0.2,
70 0.18, 0.08, 0.05,
71 0.023, 0.012, 0.007, 0.02};
72
73G4double G4PiMinusStopLi::eKin[22] = { 15., 17.5, 22.5, 27.5,
74 32.5, 37.5, 42.5,
75 47.5, 52.5, 57.5,
76 62.5, 67.5, 72.5, 77.5,
77 82.5, 87.5, 92.5,
78 97.5, 102.5, 105. };
79
80
81// Opening angle distributions measured for coincident nucleon emission
82// (P.Heusi et al., Nucl. Phys. A407 (1983) 429
83
84G4int G4PiMinusStopLi::angleEntries = 7;
85
86G4double G4PiMinusStopLi::angleData[7] =
87{ 0.17, 0.4, 0.7, 1.1, 1.3, 20., 70. };
88
89G4double G4PiMinusStopLi::angle[8] = { 1.308997, 1.570796, 1.832596, 2.094395,
90 2.356194, 2.617994, 2.967060, 3.1415927 };
91
92
93
94// Constructor
95
97
98{
99 // Cluster size: nucleon pair, alpha, triton etc.
100 // First implementation: interaction with nucleon pair only
101 _clusterSize = 2;
102
103 // R ratio
104 theR = 1. / (1. + npRatio);
105
106 _definitions = new std::vector<G4ParticleDefinition*>();
107 _momenta = new std::vector<G4LorentzVector*>();
108
109 std::vector<double> eKinVector;
110 std::vector<double> eKinDataVector;
111 int i;
112 for (i=0; i<eKinEntries; i++)
113 {
114 eKinVector.push_back(eKin[i]);
115 eKinDataVector.push_back(eKinData[i]);
116 }
117 eKinVector.push_back(eKin[eKinEntries]);
118 _distributionE = new G4DistributionGenerator(eKinVector,eKinDataVector);
119
120 std::vector<double> angleVector;
121 std::vector<double> angleDataVector;
122 for (i=0; i<angleEntries; i++)
123 {
124 angleVector.push_back(angle[i]);
125 angleDataVector.push_back(angleData[i]);
126 }
127 angleVector.push_back(angle[angleEntries]);
128 _distributionAngle = new G4DistributionGenerator(angleVector,angleDataVector);
129}
130
131
132// Destructor
133
135{}
136
138{
139 return nFinalNucleons;
140}
141
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
virtual ~G4PiMinusStopLi()
virtual G4double FinalNucleons()
std::vector< G4ParticleDefinition * > * _definitions
G4DistributionGenerator * _distributionE
std::vector< G4LorentzVector * > * _momenta
G4DistributionGenerator * _distributionAngle